首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Transport of energy through the focal region of a high-numerical-aperture system with efficient annular focusing of light beam and its optimum thin-film linear-to-radial polarization conversion
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Transport of energy through the focal region of a high-numerical-aperture system with efficient annular focusing of light beam and its optimum thin-film linear-to-radial polarization conversion

机译:通过高值环形孔径系统的焦点区域运输能量,具有高效环形聚焦光束的聚焦及其最佳薄膜线性到径向极化转换

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摘要

In a previous paper [Opt. Commun. 407 (2018) 217-226], there was proposed a light-efficient, high-numerical-aperture focusing system which is based on a monolithic assembly of an axicon and an inclined parabolic annular reflector (AXIPAR) optimally matched to thin-film linear-to radial polarization conversion of the illuminating beam. Also, there were derived integral expressions for the Poynting vector components of the respective, tightly focused beams having a near longitudinal polarization along the optical axis. In the present paper, being a direct continuation of the previous one, these expressions are used to analyze numerically a very specific behavior of the Poynting vector magnitude and the energy flow trajectories of deep UV laser beams in the focal regions localized in an immersion liquid. In particular, it is demonstrated graphically that, in the case of an incomplete suppression of the azimuthal component of the beams, their energy flow trajectories will have not only a small waviness near the focus, but also a moderate twisting around the optical axis, carrying an orbital angular momentum. The spatial frequency filtering of the beams is found to increase the axial size of the focal region where a more pronounced twisting is observed.
机译:在先前的论文中[选择。安排。图407(2018)217-226]提出了一种高效,高数字 - 孔径聚焦系统,该聚焦系统基于轴的单片组件和倾斜的抛物线环形反射器(Axipar)与薄膜线性最佳地匹配-TO照明光束的径向偏振转换。而且,具有沿着光轴的近纵向偏振的相应,紧密聚焦光束的Poynting载体分量的衍生积分表达式。在本文中,作为前一个的直接延续,这些表达用于分析Poynting Vector幅度的非常具体的行为和在浸入液体中的焦平区域中的深紫外激光束的能量流动轨迹。特别地,图形方式证明,在梁的方位角分量的不完全抑制的情况下,它们的能量流动轨迹将不仅具有焦点附近的小波纹,而且在光轴周围围绕着扭曲的扭曲,承载一个轨道角度的动力。发现光束的空间频率滤波以增加观察到更明显的扭曲的焦点区域的轴向尺寸。

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